School of Exercise and Rehabilitation Sciences, University of Toledo, Toledo, OH, USA.
School of Exercise and Rehabilitation Sciences, University of Toledo, Toledo, OH, USA.
Phys Ther Sport. 2020 Sep;45:181-187. doi: 10.1016/j.ptsp.2020.07.006. Epub 2020 Jul 25.
To investigate validity and between-session reliability of frontal plane trunk, hip, and knee kinematics during three functional tasks in females with patellofemoral pain (PFP).
Observational.
Research Laboratory.
20 females with PFP (22.7 ± 3.2 years, 69.9 ± 9.2 kg, 167.7 ± 9.6 cm).
Trunk, hip, and knee frontal plane peak angles during the single leg squat (SLS), drop vertical jump (DVJ), and single leg hop (SLH) kinematics were evaluated using 2-dimensional (2D) and 3-dimensional (3D) motion capture. Participants returned to the lab one week later and competed a second 2D analysis of the functional tasks. Concurrent validity was assessed by evaluating relationship between 2D and 3D frontal plane kinematics with Pearson correlations. Between-session reliability was assessed by evaluating 2D kinematics with intraclass correlation coefficients by a single assessor.
Moderate to strong correlations (r = 0.55-0.76, p < .05) were found for frontal plane hip kinematics during all three tasks and the trunk during the SLH. Frontal plane kinematics demonstrated good to excellent test-retest reliability for each of the three tasks, (ICC = 0.70-0.90).
2D hip joint angles during the three functional tasks were the only valid frontal plane angles. Trunk, hip, and knee 2D frontal plane kinematics ranged between good-excellent reliability.
研究髌股疼痛(PFP)女性在三种功能性任务中,矢状面躯干、髋关节和膝关节运动学的有效性和组间可靠性。
观察性研究。
研究实验室。
20 名患有髌股疼痛的女性(22.7±3.2 岁,69.9±9.2kg,167.7±9.6cm)。
使用二维(2D)和三维(3D)运动捕捉评估单腿下蹲(SLS)、垂直跳落(DVJ)和单腿跳(SLH)运动中的躯干、髋关节和膝关节矢状面峰值角度。一周后,参与者返回实验室,对功能性任务进行第二次 2D 分析。通过皮尔逊相关评估 2D 和 3D 矢状面运动学之间的关系来评估同时效度。通过一位评估者的组内相关系数评估 2D 运动学的组间可靠性。
在所有三项任务中,髋关节矢状面运动学和 SLH 期间的躯干矢状面运动学都存在中度到高度相关(r=0.55-0.76,p<0.05)。在所有三项任务中,2D 运动学都具有良好到极好的测试-重测可靠性(ICC=0.70-0.90)。
在三种功能性任务中,只有 2D 髋关节角度是有效的矢状面角度。躯干、髋关节和膝关节的 2D 矢状面运动学的可靠性在良好到极好之间。